Structural and functional changes of pyramidal neurons at the site of an implanted microelectrode array in rat primary motor cortex
Gregory, B. A.; Thompson, C. H.; Salatino, J. W.; Railing, M. J.; Zimmerman, A. F.; Gupta, B.; Williams, K.; Beatty, J. A.; Cox, C. L.; Purcell, E. K.
Show abstract
Devices capable of recording or stimulating neuronal signals have created new opportunities to understand normal physiology and treat sources of pathology in the brain. However, it is possible that the initial surgical insertion and subsequent tissue response to implanted electrodes may influence the nature of the signals detected or stimulated. In this study, we characterized structural and functional changes in pyramidal neurons surrounding silicon or polyimide-based electrodes implanted in the motor cortex of rats. Devices were captured in 300 m-thick tissue slices collected at the 1 or 6 week time point post-implantation, and individual neurons were assessed using a combination of whole-cell electrophysiology and 2-photon imaging. We observed disruption of the dendritic arbor of neurons near (<100 m) the device surface at both time points, as well as a significant reduction in spine densities. These effects were accompanied by a decrease in the frequency of spontaneous excitatory post-synaptic currents (sEPSCs), a loss in sag amplitude, and an increase in spike frequency adaptation at the 6 week time point. Interestingly, we also noted a significant increase in filopodial density in neurons surrounding devices. Results were similar for polyimide and silicon-based electrodes. We hypothesize that the effects observed in this study may contribute to the signal loss and instability that often accompany chronically implanted electrodes.
Matching journals
The top 2 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Utah Array Characterization and Histological Analysis of a Multi-Year Implant in Non-Human Primate Motor and Sensory Cortices 96%
- Sputtered porous Pt for wafer-scale manufacture of low-impedance flexible microelectrodes 94%
- Calcium imaging in freely-moving mice during electrical stimulation of deep brain structures 94%
Similar papers in this journal
- Multi-channel intraneural vagus nerve recordings with a novel high-density carbon fiber microelectrode array 94%
- 64-Channel Carbon Fiber Electrode Arrays for Chronic Electrophysiology 94%
- Layer-specific sensory processing impairment in the primary somatosensory cortex after motor cortex infarction 92%
Similar papers in this journal
- Planar Amorphous Silicon Carbide Microelectrode Arrays for Chronic Recording in Rat Motor Cortex 97%
- Pro-myelinating Clemastine administration improves recording performance of chronically implanted microelectrodes and nearby neuronal health 95%
- In vivo spatiotemporal dynamics of astrocyte reactivity following neural electrode implantation 94%
Similar papers in this journal
Similar papers in this journal
- A fully adapted headstage for electrophysiological experiments with custom and scalable electrode arrays to record widely distributed brain regions 94%
- CHIME: CMOS-hosted in-vivo microelectrodes for massively scalable neuronal recordings 94%
- Double-layer flexible neuronal probe with closely spaced electrodes for high-density in vivo brain recordings 93%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.